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潘 星: 聚合物基复合材料的力学性能测试方法
需求, 但少数测试在夹具设计和适用性上面仍有一 withshortcarbonfibersandnano-silica [ J ] .Pol y mer
些问题。对于聚合物基复合材料界面力学性能表 Testin g , 2013 , 32 ( 3 ): 525-534.
[ 13 ] GAIN A K , OROMIEHIE E , PRUSTY B G.
征, 目前还没有特别完善的试验方法及测试标准。
Nanomechanical characterisation of CF-PEEK
此外, 如何借助更多、 更新的表征技术和评估手段,
com p osites manufactured usin g automated fibre
准确获得复合材料界面的微观形貌、 微观结构、 化学
p lacement ( AFP )[ J ] .Com p ositesCommunications ,
成分、 力学性能等参数, 更好地解释界面对材料性能
2022 , 31 : 101109.
的影响机理, 以指导和优化聚合物基复合材料的设 [ 14 ] QIY X , JIANG D Z , JU S , etal.Determinin gthe
计, 将是未来研究的重点和发展趋势。 inter p hasethicknessandp ro p ertiesincarbonfiber
参考文献: reinforcedfastandconventionalcurin ge p ox ymatrix
com p ositesusin gp eakforceatomicforcemicrosco py
[ J ] .Com p ositesScienceandTechnolo gy , 2019 , 184 :
[ 1 ] 段文, 孔祥鑫. 碳纤维复合材料在汽车轻量化领域中
107877.
的应用进展[ J ] . 汽车零部件, 2023 ( 4 ): 84-87.
[ 15 ] ZHENGN , HEJM , GAOJF , etal.Adhesionforce
[ 2 ] 牛一凡, 高赛, 王晓瑞. 聚合物基复合材料拉伸性能试
验方法国标和美标的对比分析[ J ] . 理化检验( 物理分 measured b y atomic force microsco py for direct
carbonfiber-e p ox yinterfacialcharacterization [ J ] .
册), 2017 , 53 ( 8 ): 548-552.
[ 3 ] 韩天福. 纤维增强复合材料层间剪切强度测定方法的 Materials& Desi g n , 2018 , 145 : 218-225.
[ 16 ] TOTTENKR , KUTUBB , CARLSSONLA.Insitu
改进研究[ D ] . 大连: 大连海事大学, 2022.
[ 4 ] 邹建超. 纤维复合材料冲击后压缩 / 剪切的损伤机理 determination ofthefiber-matrixinterfacetensile
stren g th [ J ] .JournalofCom p ositeMaterials , 2016 , 50
及性能预测研究[ D ] . 大连: 大连理工大学, 2021.
[ 5 ] 郭壮壮. 复合材料Ⅰ型与Ⅰ / Ⅱ混合型层间断裂韧性 ( 5 ): 589-599.
[ 17 ] LIUY , HEDL , HAMONAL , etal.Com p arisonof
测试的新方法[ D ] . 上海: 上海交通大学, 2019.
differentsurfacetreatmentsofcarbonfibersusedas
[ 6 ] TOMITAA , CHIAO R Y.Observationofberr y ’ s
reinforcements in e p ox y com p osites : Interfacial
to p olo g icalp haseb y useofan o p ticalfiber [ J ] .
stren g thmeasurementsb yinsituscannin gelectron
Ph y sicalReviewLetters , 1986 , 57 ( 8 ): 937-940.
microsco p etensiletests [ J ] .Com p ositesScienceand
[ 7 ] CHARAN V S , VARDHAN A V , RAJ S , etal.
Technolo gy , 2018 , 167 : 331-338.
Ex p erimentalcharacterizationofCFRPb yNOLrin g test
[ 18 ] GHAFFARIS , SEON G , MAKEEV A.In-situSEM
[ J ] .MaterialsToda y : Proceedin g s , 2019 , 18 : 2868-2874.
based method for assessin g fiber-matrixinterface
[ 8 ] ZHENGN , HEJM , ZHAOD , etal.Im p rovementof
shearstren g thinCFRPs [ J ] .Materials & Desi g n ,
atomicox yg enerosionresistanceofcarbonfiberand
2021 , 197 : 109242.
carbonfiber / e p ox ycom p ositeinterfacewithasilane
[ 19 ] EGOSHIT , ISHIKAWA T , TEZURA M , etal.
cou p lin ga g ent [ J ] .Materials & Desi g n , 2016 , 109 :
Transmissionelectron microsco py ofunidirectional
171-178.
carbonfiberreinforcedp lasticsaton-axistension [ J ] .
[ 9 ] LING , GEUBELLEPH , SOTTOSNR.Simulation
Materialia , 2020 , 14 : 100907.
offiberdebondin gwithfrictioninamodelcom p osite
[ 20 ] ISHIKAWA T , TEZURA M , KIZUKA T.Direct
p ushouttest [ J ] .InternationalJournalofSolidsand
observationofmicrostructuralfractured y namicsin
Structures , 2001 , 38 ( 46 / 47 ): 8547-8562.
carbon fiber reinforced p lastics via in situ
[ 10 ] KRISHNAN P.A novelmicrobondbundlep ullout
transmissionelectron microsco py [ J ] .Com p osites
techni q ueto evaluatetheinterfacialp ro p erties of
ScienceandTechnolo gy , 2020 , 198 : 108264.
fibre-reinforcedp lasticcom p osites [ J ] .Bulletin of
[ 21 ] MONTES-MORÁN M A , YOUNG R J.Raman
MaterialsScience , 2017 , 40 ( 4 ): 737-744.
s p ectrosco pystud yofhi g h-moduluscarbonfibres :
[ 11 ] ZHAOZB , TENG K Y , LIN , etal.Mechanical ,
effect of p lasma-treatment on the interfacial
thermalandinterfacialp erformancesofcarbonfiber
p ro p erties of sin g le-fibre-Ze p ox y com p osites [ J ] .
reinforcedcom p ositesflavoredb y carbonnanotubein
Carbon , 2002 , 40 ( 6 ): 857-875.
matrix / interface [ J ] .Com p osite Structures , 2017 ,
[ 22 ] YA M , PYRZ R.Reinforcement role of carbon
159 : 761-772.
nanotubes : interfacial p ro p ertiesofcarbonfibre-e p ox y
[ 12 ] MOLAZEMHOSSEINI A , TOURANI H , NAIMI-
nanocom p osite [ J ] . Pol y mers and Pol y mer
JAMALM R , etal.Nanoindentationandnanoscratchin g
Com p osites , 2015 , 23 ( 4 ): 213-222.
res p onsesofPEEKbasedh y bridcom p ositesreinforced
7 4